TiO2-Based Sorbent of Lead Ions

Jana Seidlerová , Ivo Šafařík , Lucia Rozumová , Mirka Šafaříková , Oldřich Motyka
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引用次数: 10

Abstract

The non-magnetic TiO2 powder and magnetically modified TiO2 powder were employed for the sorption experiments. FeSO4.7H2O was used for synthesis of magnetically responsive TiO2. The non-magnetic and prepared magnetic materials were characterized by scanning electron microscopy and X-ray diffraction methods. The particle size and specific surface area were determined. A detailed study of the adsorption process performed using batch adsorption experiments was carried out with various concentrations of lead ions and contact time. A flame atomic absorption spectrometer was used for determination of Pb2+ ions concentration in solution. Adsorption process has been modeled by the Langmuir and Freundlich isotherms using linear and non-linear regression. The results showed that the adsorption of Pb2+ ions on the magnetic and non-magnetic TiO2 particles occurred in a monolayer. Presence of magnetic iron oxides particles on the surface of sorbents increased the adsorption rate, and increased the maximum amount of adsorbed Pb2+ ions per mass in comparison with adsorption on the non-magnetic TiO2 particles. The magnetically modified TiO2 particles allow magnetic separation of the sorbents with already adsorbed ions of pollutants.

二氧化钛基铅离子吸附剂
采用非磁性TiO2粉末和磁性改性TiO2粉末进行吸附实验。用FeSO4.7H2O合成了磁响应TiO2。用扫描电子显微镜和x射线衍射方法对非磁性材料和制备的磁性材料进行了表征。测定了颗粒大小和比表面积。采用间歇吸附实验对不同浓度铅离子和不同接触时间的吸附过程进行了详细的研究。采用火焰原子吸收光谱仪测定了溶液中Pb2+离子的浓度。吸附过程用Langmuir和Freundlich等温线进行了线性和非线性回归。结果表明,Pb2+离子在磁性和非磁性TiO2颗粒上的吸附均以单层形式发生。磁性氧化铁颗粒在吸附剂表面的存在提高了吸附剂的吸附速率,与非磁性TiO2颗粒的吸附相比,每质量Pb2+离子的最大吸附量增加。磁性修饰的TiO2颗粒可以使吸附剂与已经吸附的污染物离子进行磁分离。
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